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Lipids and Lipid Mediators Associated with the Risk and Pathology of Ischemic Stroke
Anna Kloska1, Marcelina Malinowska1, Magdalena Gabig-Cimińska1,2
1Department of Medical Biology and Genetics, Faculty of Biology, University of Gdańsk, Wita Stwosza 59, 80-308 Gdańsk, Poland.
Insights
This review explores how serum lipids and lipid mediators, like eicosanoids, impact stroke risk and brain recovery. Understanding these lipid pathways may lead to new stroke treatments and biomarkers.
Area of Science:
- Neurology
- Biochemistry
- Metabolic pathways
Background:
- Stroke, a leading cause of disability, is linked to dyslipidemia, a modifiable risk factor.
- Lipids are crucial for brain structure and function; their metabolism influences post-stroke brain health.
- Lipid mediators, such as eicosanoids, can exert neuroprotective or neurodegenerative effects.
Purpose of the Study:
- To review serum lipids associated with ischemic stroke risk.
- To discuss the role of lipid mediators, particularly eicosanoids, in stroke pathology.
- To summarize research on lipid metabolic targets for stroke treatment and novel biomarkers.
Main Methods:
- Literature review of studies on serum lipids and stroke.
- Analysis of research on lipid mediators (e.g., eicosanoids) in ischemic stroke.
- Synthesis of current findings on lipid metabolism in stroke treatment and diagnostics.
Main Results:
- Dyslipidemia is a significant risk factor for ischemic stroke.
- Lipid mediators play a dual role in post-stroke brain injury and recovery.
- Emerging evidence suggests lipid pathways as therapeutic targets and sources for biomarkers.
Conclusions:
- Serum lipid profiles are integral to understanding ischemic stroke risk.
- Targeting lipid metabolism offers potential for novel stroke therapies.
- Further research into lipid mediators can enhance stroke prevention and management strategies.
Abstract:
Stroke is a severe neurological disorder in humans that results from an interruption of the blood supply to the brain. Worldwide, stoke affects over 100 million people each year and is the second largest contributor to disability. Dyslipidemia is a modifiable risk factor for stroke that is associated with an increased risk of the disease. Traditional and non-traditional lipid measures are proposed as biomarkers for the better detection of subclinical disease. In the central nervous system, lipids and lipid mediators are essential to sustain the normal brain tissue structure and function. Pathways leading to post-stroke brain deterioration include the metabolism of polyunsaturated fatty acids. A variety of lipid mediators are generated from fatty acids and these molecules may have either neuroprotective or neurodegenerative effects on the post-stroke brain tissue; therefore, they largely contribute to the outcome and recovery from stroke. In this review, we provide an overview of serum lipids associated with the risk of ischemic stroke. We also discuss the role of lipid mediators, with particular emphasis on eicosanoids, in the pathology of ischemic stroke. Finally, we summarize the latest research on potential targets in lipid metabolic pathways for ischemic stroke treatment and on the development of new stroke risk biomarkers for use in clinical practice.
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